Preventing and addressing environmental harm through restorative justice. This project aims to develop a knowledge base on how Restorative Justice (RJ) principles and practices can prevent and address environmental harm. Research has demonstrated that RJ is a powerful response to a wide variety of governance challenges and could provide a useful alternative paradigm for environmental regulation. This project aims to apply the processes and values of RJ to environmental regulation with a focus on ....Preventing and addressing environmental harm through restorative justice. This project aims to develop a knowledge base on how Restorative Justice (RJ) principles and practices can prevent and address environmental harm. Research has demonstrated that RJ is a powerful response to a wide variety of governance challenges and could provide a useful alternative paradigm for environmental regulation. This project aims to apply the processes and values of RJ to environmental regulation with a focus on harm prevention, advancing theory into a new domain of application. This should lead to immediate and long-term benefits, including better prevention of environmental harm, better relationships with communities, and stronger commitments by those who have caused harm to rehabilitate, repair and reform.Read moreRead less
Reducing environmental footprint by improving phosphorous use efficiency. While modern agriculture relies heavily on the use of phosphorous fertilizers, most of them are not used by plants and lost in runoff, resulting in a massive environmental damage through contamination of waterways (termed eutrophication). This project takes advantage of an untapped resource - a unique collection of Tibetan wild barley genotypes, to reveal key traits that confer superior phosphorus use efficiency in wild ba ....Reducing environmental footprint by improving phosphorous use efficiency. While modern agriculture relies heavily on the use of phosphorous fertilizers, most of them are not used by plants and lost in runoff, resulting in a massive environmental damage through contamination of waterways (termed eutrophication). This project takes advantage of an untapped resource - a unique collection of Tibetan wild barley genotypes, to reveal key traits that confer superior phosphorus use efficiency in wild barley and identify appropriate candidate genes and their position on chromosomes for further incorporating these traits into commercial barley cultivars. This will reduce the environmental footprint of modern agricultural practices on terrestrial and aquatic ecosystems without compromising food security.Read moreRead less
Support needs assessment: a developmental model for use in support, training and funding for individuals with single and multiple disabilities. This research project aims to construct and trial a new model for the assessment of the support needs of persons with disabilities. It addresses a number of critical deficiencies which recent research has shown to undermine the reliability, validity and usefulness of existing support needs instruments. Specifically, it is proposed to collect data that ....Support needs assessment: a developmental model for use in support, training and funding for individuals with single and multiple disabilities. This research project aims to construct and trial a new model for the assessment of the support needs of persons with disabilities. It addresses a number of critical deficiencies which recent research has shown to undermine the reliability, validity and usefulness of existing support needs instruments. Specifically, it is proposed to collect data that will inform the determination of the support needs of people with different kinds and combinations of disabilities. Variations in maintenance and intervention supports over time and context will be considered. The assessment system planned will have the flexibility to meet a number of potential user objectives.Read moreRead less
Non-urban water governance: rethinking compliance and enforcement. This project aims to critically evaluate the practices and strategies of non-urban water compliance and enforcement in Australia and internationally, to identify and develop innovations for water governance. New law and policy knowledge is expected from its fusion of empirical data and regulatory theory. The project expects to advance applied regulatory theory by identifying improvements in compliance and enforcement to help solv ....Non-urban water governance: rethinking compliance and enforcement. This project aims to critically evaluate the practices and strategies of non-urban water compliance and enforcement in Australia and internationally, to identify and develop innovations for water governance. New law and policy knowledge is expected from its fusion of empirical data and regulatory theory. The project expects to advance applied regulatory theory by identifying improvements in compliance and enforcement to help solve environmental issues. It will also lead to policy reforms for delivering more effective, efficient and politically-acceptable compliance outcomes for non-urban water management that will benefit water regulators and the sustainability and productivity of Australia's agricultural industry.Read moreRead less
Characterisation of a major quantitative trait locus on wheat chromosome 3BL responsible for Fusarium crown rot resistance. Fusarium crown rot (FCR) is a serious wheat disease in Australia and worldwide. Our team has identified a major chromosome region controlling this disease. This project is proposing to develop DNA markers for marker assisted breeding, to understand the genetic mechanism of resistance and to identify genes responsible for resistance to the disease.
Disaster risk reduction practices that leave nobody behind. This project aims to answer critical questions about how to assist people with disabilities (PWD) in disasters, what their support needs are and how they might help themselves to better prepare for disasters. Significance includes coupling a person-centred emergency preparedness tool with cross-sectoral processes to collect and use data about the support needs of PWD in emergencies, increase cross-sector communication and collaboration ....Disaster risk reduction practices that leave nobody behind. This project aims to answer critical questions about how to assist people with disabilities (PWD) in disasters, what their support needs are and how they might help themselves to better prepare for disasters. Significance includes coupling a person-centred emergency preparedness tool with cross-sectoral processes to collect and use data about the support needs of PWD in emergencies, increase cross-sector communication and collaboration between emergency managers and community services, and improve equitable access for PWD to community-level disaster risk reduction (DRR). The expected outcome will be the co-design of effective mechanisms that state & federal decision makers can use to scale-up disability-inclusive DRR across Australia.Read moreRead less
Towards improving the yield of Canola and other Brassicas during drought. One of the major problems faced by world agriculture is drought; this project should improve the yield of Canola during moderate to severe droughts. Significantly, this project includes both "traditional" non-genetically modified (GM) strategies and GM strategies to maximise the market for our drought-tolerant canola both in Australia and overseas.
Discovery Early Career Researcher Award - Grant ID: DE200100922
Funder
Australian Research Council
Funding Amount
$408,490.00
Summary
Foresight: Anticipatory decision-making in water resource management. Long-term planning is vital to secure Australia’s water resources in the face of environmental disruption. This project aims to contribute to sustainable and equitable water management by examining the efficacy of anticipatory decision-making approaches. Qualitative research will be used to examine how scientific knowledge is used or contested in water reform within the Murray-Darling Basin. Intended outcomes include improved ....Foresight: Anticipatory decision-making in water resource management. Long-term planning is vital to secure Australia’s water resources in the face of environmental disruption. This project aims to contribute to sustainable and equitable water management by examining the efficacy of anticipatory decision-making approaches. Qualitative research will be used to examine how scientific knowledge is used or contested in water reform within the Murray-Darling Basin. Intended outcomes include improved capacities to plan for future change and establishing anticipatory decision-making within Australian natural resource management. This should provide significant benefits based on an integrated approach to science and decision-making that addresses trade-offs between stakeholders to identify shared action pathways.Read moreRead less
Industrial Transformation Training Centres - Grant ID: IC230100016
Funder
Australian Research Council
Funding Amount
$5,000,000.00
Summary
ARC Training Centre in Predictive Breeding for Agricultural Futures. This Centre aims to develop the advanced capacity needed to secure Australia’s food and fibre production and export value into the future. Leveraging immense industry support, the Centre expects to develop and integrate cutting-edge plant and animal breeding technologies and deliver world-class training that addresses critical demand for highly skilled industry leaders. Expected outcomes include a future-ready predictive breedi ....ARC Training Centre in Predictive Breeding for Agricultural Futures. This Centre aims to develop the advanced capacity needed to secure Australia’s food and fibre production and export value into the future. Leveraging immense industry support, the Centre expects to develop and integrate cutting-edge plant and animal breeding technologies and deliver world-class training that addresses critical demand for highly skilled industry leaders. Expected outcomes include a future-ready predictive breeding industry able to transform data into optimised decisions, and the human capacity to drive it. This should provide significant benefits to enhance the sustainability and profitability of all major Australian agriculture sectors, including livestock, grains, horticulture, cotton, wine, dairy, forestry and fisheries.Read moreRead less
Using defined biotic and abiotic stimuli to dissect patterns of gene expression and protein accumulation that specify root architecture. Root morphogenesis is fundamental to agriculture and valuable for investigating the informational networks of genes, proteins and metabolites that control root growth and plant development. Root systems vary widely both within and between species. Root morphology is directed by a basic genetic program that is influenced by environmental factors to provide an e ....Using defined biotic and abiotic stimuli to dissect patterns of gene expression and protein accumulation that specify root architecture. Root morphogenesis is fundamental to agriculture and valuable for investigating the informational networks of genes, proteins and metabolites that control root growth and plant development. Root systems vary widely both within and between species. Root morphology is directed by a basic genetic program that is influenced by environmental factors to provide an enormous "phenotypic plasticity". This project will use two model plant systems to investigate how different external signals are "translated" by the plant into different developmental regimes. This knowledge is crucial to understanding how the plasticity of root development is modulated in response to changing environmental factors.Read moreRead less